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首页> 外文期刊>BioTechnology: An Indian Journal >Physiology and growth of Pyrococcus sp. HT3 in bach culture with cellobiose and maltose as the principal carbon sources
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Physiology and growth of Pyrococcus sp. HT3 in bach culture with cellobiose and maltose as the principal carbon sources

机译:火球菌的生理和生长。巴氏培养中以纤维二糖和麦芽糖为主要碳源的HT3

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摘要

The hydrothermal hot spring archaeonPyrococcussp. T3 was grown in batch cultures in closed bottles, both in the presence and in the absence of elemental sulfur. Growth on carbohydrates, proteinaceous substrates and amino acids was investigated. The disaccharides maltose and cellobiose were shown not to be able to enhance growth suggesting that Pyrococcussp. T3 is unable to use them as sole carbon sources. By contrast, proteinaceous substrates such as peptone and brain heart infusion were shown to be very good substrates for the growth of Pyrococcussp. T3. Growth on brain heart infusion was shown to require additional nutrients when sulfur was not present in the culture medium. Growth on amino acids only took place in the presence of sulfur. These results indicate that sulfur plays an important role in the metabolism and energetics of Pyrococcussp. HT3.
机译:热液温泉古细菌Pyrococcussp。在有和没有元素硫的情况下,T3在封闭的瓶中分批培养。研究了在碳水化合物,蛋白质底物和氨基酸上的生长。显示麦芽糖和纤维二糖的二糖不能促进生长,这表明焦球菌属。 T3无法将它们用作唯一的碳源。相比之下,蛋白质底物(例如蛋白one和脑心浸液)被证明是焦球菌生长的很好底物。 T3。当培养基中不存在硫时,脑内灌注的生长被证明需要更多的营养。氨基酸的生长仅在硫存在下进行。这些结果表明硫在焦球菌的代谢和能量中起重要作用。 HT3。

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